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首页> 外文期刊>CRUSTACEANA >ON THE DIVERSITY OF AMPHIPODS INHABITING SARGASSUM AS WELL AS CLEAR AREAS IN KUWAIT COASTAL WATERS, WITH AN ASSESSMENT OF THE EFFECT OF TURBIDITY AND NOTES ON THEIR ABUNDANCE, COMPOSITION, AND DISTRIBUTION: A PRELIMINARY STUDY
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ON THE DIVERSITY OF AMPHIPODS INHABITING SARGASSUM AS WELL AS CLEAR AREAS IN KUWAIT COASTAL WATERS, WITH AN ASSESSMENT OF THE EFFECT OF TURBIDITY AND NOTES ON THEIR ABUNDANCE, COMPOSITION, AND DISTRIBUTION: A PRELIMINARY STUDY

机译:关于稻草居住的Amphipods的多样性以及科威特沿海水域的透明地区,评估了浊度和注意事项对其丰富,组成和分布的影响:初步研究

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摘要

The distribution and abundance patterns of amphipods associated with Sargassum species were studied on a spatial scale along Kuwait's coastal waters. Macroalgae, in particular Sargassum spp., are known to host a high biodiversity of marine fauna, particularly amphipods, when compared to non-Sargassum ("clear") areas. Amphipods are an important component in the food web, being consumed by different stages of fish. Sargassum was sampled from four different stations in Kuwait's waters to determine the amphipod species composition and density. Physicochemical parameters were measured at the time of sampling at each station, focusing on turbidity, as this can promote variation in the faunal distribution between areas, and it was the only non-biological factor showing a distinctive pattern between stations in this study. The objectives of this study thus were to describe the amphipod biodiversity in Sargassum communities and to measure the difference in diversity between Sargassum and clear areas, while concurrently taking into account the effect of turbidity. The most abundant amphipods represented were Pontocrates sp. (cf. arenarius (Spence Bate, 1858)), Ericthonius sp. (cf. forbesii Hughes & Lowry, 2006), Maxillipius rectitelson Ledoyer, 1973, and Podocerus mamlahensis Myers & Nithyanandan, 2016. Among the measured physicochemical parameters, only turbidity had a significant effect on the biodiversity of amphipods (F-1,F-6 = 19.35, p = 0.0046) with a negative relationship based on the general linear model test. The effect of Sargassum and non-Sargassum areas on amphipod diversity was statistically not significant (F-1,F-6 = 3.35, p = 0.117). Also, there was no interaction between turbidity and Sargassum/clear areas (F-1,F-6 = 0.12, p = 0.742). However, the diversity was observed to be higher in Sargassum areas of all stations as compared to their clear counterparts, except in Khairan during January 2016, where the situation was the opposite. The abundance was highest in low turbidity, particularly at Salmyia station, compared to the high turbidity conditions at the stations at Failaka and Green Island. The species composition differed as well, the number of species found being the highest in the Sargassum area of Salmyia Station and the lowest at Failaka Island (highest turbidity). Only Salmyia Station (low turbidity) contained 27 species in its Sargassum area, of which only few were present at other stations in both areas. Turbidity affected the diversity of amphipods, and diversity was higher in Sargassum areas at all stations except Khairan in January 2016, but that difference was not significant.
机译:研究了与Sargassum物种相关的Amphipods的分布和丰度模式在科威特沿海水域的空间秤上进行了研究。众所周知,大理石果,特别是Sargassum SPP。与非Sargassum(“透明”)区域相比,众所周知,举办海洋动物群,特别是Amphipods的高生物多样性。 Amphipods是食品网中的重要组成部分,被鱼类的不同阶段消耗。 Sargassum从科威特水域的四个不同站中取样,以确定Amphipod物种组成和密度。在每个站的采样时测量物理化学参数,专注于浊度,因为这可以促进区域之间的动物分布的变化,并且它是唯一表示本研究中的车站之间具有独特模式的非生物学因素。因此,这项研究的目标是描述Sargassum社区的Amphipod生物多样性,并测量Sargassum和清晰区域之间的多样性差异,同时考虑到浊度的影响。最丰富的Amphipods是浮氏菌。 (参见Arenarius(Spence Bate,1858)),Ericthonius SP。 (CF.Forbesii Hughes& Lowry,2006),Maxillipius Rectitelson Ledoyer,1973,以及Podocerus Mamlahensis Myers& Nithyanandan,2016年。在测量的物理化学参数中,基于一般线性模型试验,只有浊度对Amphipods(F-1,F-6 = 19.35,P = 0.0046)的生物多样性具有显着影响。 Sargassum和非Sargassum区域对Amphipod多样性的影响有统计学上不显着(F-1,F-6 = 3.35,P = 0.117)。此外,浊度和Sargassum /透明区域之间没有相互作用(F-1,F-6 = 0.12,P = 0.742)。然而,除了在2016年1月的Khairan之外,所有车站的Sargassum地区观察到多样性在所有站点的萨格萨姆地区更高,除了凯兰兰,情况相反。与故障卡和绿岛站的高浊度条件相比,该丰富在低浊度,特别是在Salmyia站。物种组成也有所不同,所发现的物种数量是Salmyia站的Sargassum面积最高,并且在损害岛(最高浊度)中最低。只有Salmyia站(低浊度)在其Sargassum地区含有27种,其中少数位于两个地区的其他站点。浊度影响了两样的Amphipods的多样性,在2016年1月除了Khairan的所有车站的Sargassum地区的多样性较高,但这种差异并不重要。

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  • 来源
    《CRUSTACEANA》 |2018年第7期|共53页
  • 作者单位

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

    Kuwait Inst Sci Res Environm &

    Life Sci Res Ctr Ecosyst Based Management Marine Resources Program POB 1638 Salmyia 22017 Kuwait;

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  • 正文语种 eng
  • 中图分类 昆虫学;
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